Hafnium carbide tantalum

(Hf,Ta)C Hafnium carbide tantalum complex carbide solid solution powder material, is a new type of high temperature wear-resistant structure and functional material, and tungsten carbide, titanium carbide, chromium carbide, titanium nitride, zirconium carbide, niobium carbide and other rare metal carbide to form binary, ternary, four-element, five-element, six-element compound solid solution, It can improve the properties of red hardness, wear resistance, oxidation resistance, high temperature resistance, corrosion resistance and so on.

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Scope of application:
(Hf, Ta) C hafnium tantalum carbide compound carbides of solid powder materials, as additives, the application in the cemented carbide cutting tools, metal ceramic cutting tools, powder metallurgy products, high temperature structure material, high temperature resistant coating material, material, tool steel and the resistance of high temperature burning, can improve the hardness of materials, strength, erosion resistance and high temperature resistant performance.
Product Application cases:
(Hf,Ta)C Hafnium carbide tantalum complex carbide solid solution powder material, by using laser heating technology to test its heat resistance, melting point reached 4215 degrees Celsius. It is a kind of composite material compound with high melting point and refractory ceramic material. It is applied in the thermal protection system of high-speed aircraft by a research institution in the United States. It has strong resistance to heat, can withstand and resist very harsh high temperature environment, and can also be used as fuel cladding in the overheating environment of nuclear reactors.
Heat from air friction includes very high temperatures at supersonic speeds of more than Mach 5. Because (Hf,Ta)C Hafnium carbide and tantalum complex carbide solid solution powder materials can withstand and withstand very harsh high temperature environments, paving the way for the development of the next generation of supersonic aircraft, this material means that new space vehicles may have faster speeds than before. (Hf,Ta)C Hafnium carbide and tantalum compound carbide solid solution powder materials are applied in supersonic aircraft, aircraft nose, the edge of external components that must bear the maximum friction during flight, making it possible to carry people in aircraft with the speed of more than Mach 5.

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